High-temperature metal compensators are designed with a high-temperature structural layout, consisting of main components such as stainless steel metal bellows, guide plates, insulation layers, end pipes, tension rods, and connecting pipes (or flanges) that are welded together. Different high-temperature metals are chosen based on the working temperature conditions, including materials like 316L stainless steel, 310S stainless steel, 309S stainless steel, and 321 stainless steel, which can withstand temperatures exceeding 1000°C. These materials meet the user's requirements for the compensator's high-temperature resistance and service life.
Due to the high-temperature metal compensator's requirement to withstand high temperatures, the heat-resistant components consist of two parts: a coated surface and insulation bricks (installed by engineering during pipe construction), as well as an insulating layer (completed during the product manufacturing process). These are categorized based on the direction of compensation: axial high-temperature metal compensators can compensate for the axial displacement of high-temperature pipelines; lateral high-temperature metal compensators can compensate for the lateral displacement; and angular high-temperature metal compensators can compensate for the angular displacement of high-temperature pipelines. Custom models of high-temperature metal compensators can also be tailored to meet customer requirements.
High-temperature metal compensators are designed for high-temperature pipelines in the steel and cement industry. They are suitable for the third wind pipelines in the cement industry and other high-temperature medium applications. The working temperature can reach above 1200°C, featuring easy installation and usage, ensuring pipeline safety, and extending the service life of the pipeline.
High-Temperature Metal Compensator Product Features:
Compensate for the thermal expansion of the pipeline.
2. Low-noise and energy-efficient, effectively reducing equipment noise and vibration.
3. Avoid using large supports for pipelines and equipment on the project to save substantial materials and labor, and enhance the safety of the equipment and system.
4. With the capability to withstand high temperatures, corrosion, and sealing.
5. Easy installation, quick replacement, and minimal time required.

































